EP2439062B1 - Technical adhesive strip and use of same to stick films or non-woven fabrics in construction - Google Patents

Technical adhesive strip and use of same to stick films or non-woven fabrics in construction Download PDF

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Publication number
EP2439062B1
EP2439062B1 EP10013495.6A EP10013495A EP2439062B1 EP 2439062 B1 EP2439062 B1 EP 2439062B1 EP 10013495 A EP10013495 A EP 10013495A EP 2439062 B1 EP2439062 B1 EP 2439062B1
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EP
European Patent Office
Prior art keywords
adhesive
carrier
adhesive tape
film
tape
Prior art date
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Application number
EP10013495.6A
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German (de)
French (fr)
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EP2439062A1 (en
Inventor
Christoph Frigge
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Coroplast Fritz Mueller GmbH and Co KG
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Coroplast Fritz Mueller GmbH and Co KG
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Application filed by Coroplast Fritz Mueller GmbH and Co KG filed Critical Coroplast Fritz Mueller GmbH and Co KG
Priority to EP13193543.9A priority Critical patent/EP2700688B1/en
Priority to PL13193543.9T priority patent/PL2700688T3/en
Priority to EP10013495.6A priority patent/EP2439062B1/en
Priority to PL10013495T priority patent/PL2439062T3/en
Publication of EP2439062A1 publication Critical patent/EP2439062A1/en
Application granted granted Critical
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B5/00Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts
    • B32B5/02Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by structural features of a fibrous or filamentary layer
    • B32B5/024Woven fabric
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B27/00Layered products comprising a layer of synthetic resin
    • B32B27/12Layered products comprising a layer of synthetic resin next to a fibrous or filamentary layer
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B27/00Layered products comprising a layer of synthetic resin
    • B32B27/40Layered products comprising a layer of synthetic resin comprising polyurethanes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B5/00Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts
    • B32B5/02Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by structural features of a fibrous or filamentary layer
    • B32B5/028Net structure, e.g. spaced apart filaments bonded at the crossing points
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09DCOATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
    • C09D133/00Coating compositions based on homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by only one carboxyl radical, or of salts, anhydrides, esters, amides, imides, or nitriles thereof; Coating compositions based on derivatives of such polymers
    • C09D133/04Homopolymers or copolymers of esters
    • C09D133/06Homopolymers or copolymers of esters of esters containing only carbon, hydrogen and oxygen, the oxygen atom being present only as part of the carboxyl radical
    • C09D133/08Homopolymers or copolymers of acrylic acid esters
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J7/00Adhesives in the form of films or foils
    • C09J7/20Adhesives in the form of films or foils characterised by their carriers
    • C09J7/22Plastics; Metallised plastics
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J7/00Adhesives in the form of films or foils
    • C09J7/20Adhesives in the form of films or foils characterised by their carriers
    • C09J7/22Plastics; Metallised plastics
    • C09J7/24Plastics; Metallised plastics based on macromolecular compounds obtained by reactions involving only carbon-to-carbon unsaturated bonds
    • C09J7/241Polyolefin, e.g.rubber
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J7/00Adhesives in the form of films or foils
    • C09J7/20Adhesives in the form of films or foils characterised by their carriers
    • C09J7/22Plastics; Metallised plastics
    • C09J7/25Plastics; Metallised plastics based on macromolecular compounds obtained otherwise than by reactions involving only carbon-to-carbon unsaturated bonds
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2262/00Composition or structural features of fibres which form a fibrous or filamentary layer or are present as additives
    • B32B2262/02Synthetic macromolecular fibres
    • B32B2262/0276Polyester fibres
    • B32B2262/0284Polyethylene terephthalate [PET] or polybutylene terephthalate [PBT]
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2307/00Properties of the layers or laminate
    • B32B2307/50Properties of the layers or laminate having particular mechanical properties
    • B32B2307/51Elastic
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2307/00Properties of the layers or laminate
    • B32B2307/70Other properties
    • B32B2307/732Dimensional properties
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2405/00Adhesive articles, e.g. adhesive tapes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2419/00Buildings or parts thereof
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J2301/00Additional features of adhesives in the form of films or foils
    • C09J2301/30Additional features of adhesives in the form of films or foils characterized by the chemical, physicochemical or physical properties of the adhesive or the carrier
    • C09J2301/312Additional features of adhesives in the form of films or foils characterized by the chemical, physicochemical or physical properties of the adhesive or the carrier parameters being the characterizing feature
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J2423/00Presence of polyolefin
    • C09J2423/006Presence of polyolefin in the substrate
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J2433/00Presence of (meth)acrylic polymer
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J2475/00Presence of polyurethane
    • C09J2475/006Presence of polyurethane in the substrate

Definitions

  • the present invention relates to a technical adhesive tape, in particular for bonding films or nonwovens in the construction sector, with a band-shaped carrier consisting of plastic and having a pressure-sensitive adhesive coating applied at least on one side and applied at a basis weight of at least 100 g / m 2 . Furthermore, the invention relates to the use of such an adhesive tape.
  • An adhesive tape of the type mentioned is from the EP 1 548 080 B1 known. To this tape in a low consuming production way a good adhesion To give rough substrates, it is provided that the adhesive coating has a coating weight of 120 - 250 g / m 2 and is applied and crosslinked in such a way that the adhesive tape has a certain initial adhesion to steel and a certain bond strength and shear strength.
  • As support materials of the known adhesive tape commercial papers, films or textiles are mentioned. Papers can preferably be provided with water repellency by means of a PE coating or a wax layer, while PE or PP films can preferably be reinforced with a scrim to improve the tensile strength.
  • the adhesives used for the adhesive coating based on polyacrylates a high aging and moisture stability can be ensured.
  • the EP 1 548 080 B1 describes in particular the use of a UV-crosslinked acrylate adhesive for tapes of the type mentioned above. Such an adhesive contains no emulsifiers and has a high water resistance. Such tapes are therefore basically suitable for moisture-stressed areas in terms of the adhesive used.
  • the CH 687 328 A5 describes an adhesive tape with a coated paper backing for bonding roofing membranes.
  • a PE polyethylene
  • Adhesive tapes with such paper or film pastes are also usually used only in the interior of the house for sealing vapor barrier films or vapor barriers. As they are often based on dispersion-based acrylate adhesives, their use according to the manufacturer is restricted to dry indoor areas.
  • the water vapor diffusion current density V - in g / m 2 * days - determined according to DIN EN ISO 7783-1.
  • the weight loss of a filled with a saline solution and covered with the test specimen container is determined over time.
  • a common statement is also that of the water vapor diffusion equivalent air layer thickness S d - given in m -, which can be calculated from the water vapor diffusion current density.
  • the standard DIN 52615 is binding.
  • materials with an s d value ⁇ 0.5 m are usually referred to as diffusion-open, those with an S d value of 0.5 m-1500 m as diffusion-inhibiting materials with an S d value> 1500 m as diffusion-tight ,
  • the EP 1 847 577 A2 describes an adhesive tape with a film carrier made of EVA (ethyl vinyl acetate) and TPE-E (ether-ester block copolymer) for the vapor-permeable bonding of roofing membranes above the insulating layer.
  • EVA ethyl vinyl acetate
  • TPE-E ether-ester block copolymer
  • a difference value between the percentage total strain under load and the percentage permanent strain after stress is introduced as a characteristic parameter.
  • strain parameter for which a specific method of determination is described on the basis of DIN 53360, is to be used in accordance with EP 1 847 577 A2 between 6 and 80 percent.
  • a determination based on the DIN standard DIN 53360 is used, wherein a change in length of a 25 mm wide sample strip under a static load of 1 kg for 30 minutes and a change in length after discharge of the sample strip are determined. From these two values, the difference between the total strain and the residual strain can be calculated as a parameter.
  • 3 specimens of 25 mm width and at least 250 mm length are taken in each case for carrying out the measurements from carrier material samples along the direction of production.
  • a gauge length of 100 ⁇ 0.5 mm is drawn with two thin markers. The marked marks must lie on the specimens at the same distance from the specimen ends. At the marks the course of the longitudinal axis is to draw.
  • the total strain of a specimen is the ratio of the total length change to the original gauge length of the specimen.
  • the total length change is the difference between the measuring length at constant tensile stress after the stress duration and the original measuring length of the test specimen.
  • the permanent strain is the ratio of the permanent change in length to the original gauge length of the specimen.
  • the permanent change in length after relief is the difference between the measuring length after the test specimen has been relieved, d. H. after removal of the tensile stress after the specified period of time and the original measuring length of the test specimen.
  • the tests are carried out at a condition of 23 ⁇ 2 ° C and a relative humidity of 50%.
  • the samples are to be acclimatised for 24 hours in the same climate before the measurements.
  • the 25 mm wide test strips are clamped to an upper jaw, the lower end is loaded with a clamp and a weight of 1 kg.
  • the distance between the measuring marks, under tension is read.
  • the strain is measured again after another 30 minutes. From these values, the total strain and the permanent strain in percent can be calculated. Then the difference between the total strain (static strain) and the residual strain is determined.
  • PE and PS (polystyrene) film supports were prepared according to the EP 1 847 577 A2 Parameter values in the range of 0.13 to 5.13 percent determined. These carriers are considered unsuitable.
  • the document contains no quantitative information on the grammage of the adhesive coating.
  • the required extensibility in combination with a low S d value also show bands with perforated PE film as a carrier.
  • the disadvantage here can be a possible Kiebstoff beschiag through the perforation holes.
  • the present invention has for its object to develop a, especially in the outdoor area of buildings usable, adhesive tape of the type mentioned, which is both waterproof, as well as flexible to tear by hand but has a high puncture resistance and at high temperature loads in Bonded state elastic shrinkage and stretching processes can follow, without causing wrinkles.
  • this adhesive tape should also be open to diffusion.
  • an adhesive tape of the type mentioned above in which the carrier consists of a cast polyolefin film and is elastically and plastically extensible such that a difference ⁇ between the total percentage strain during loading and the percentage permanent elongation after subsequent relief in the range of 15 to 50 percent, wherein in the measurement according to DIN 53360 on 25 mm wide and at least 250 mm long, taken along the direction of manufacture of the film sample strip under a static load of 1 kg applied for 30 minutes, the determination of the total elongation and the lasting elongation is determined 30 minutes after discharge of the sample strip, wherein the adhesive coating consists of a UV-crosslinked or UV-polymerized acrylate adhesive.
  • An essential difference between adhesive tapes according to the invention and the tapes known to be used consists in particular in the material structure of the support according to the invention of a cast polyolefin film.
  • Polyolefin films especially polyethylene films, are usually made by either blown extrusion or by casting. Both cast films and blown films can be produced as coextruded films with up to seven different layers.
  • the molten polymer mass exiting an extruder is formed into a tube by an annular die.
  • This tube is stretched in length and width, so that the resulting film is stretched in the longitudinal and transverse directions.
  • the tube is cooled by an inner and an outer air flow, laid flat and cut into two film webs.
  • the molten polymer composition is applied to a chill roll through a slot die.
  • the roller speed is usually higher than the exit speed at the nozzle.
  • the chill roll may have an embossment, which then finds itself as a pattern in the film.
  • Cast films have a lower crystallinity than blown films due to their faster cooling and thus a higher smoothness.
  • values in the range from 15 percent to 50 percent, preferably from 20 percent to 30 percent, can be set for this parameter, which predestines the film for the adhesive tape backing of the invention.
  • the water vapor diffusion equivalent air layer thickness s d can be in the range of ⁇ 15 m according to DIN 52615, in particular in a range of 15 m to 20 m.
  • the carrier is thus diffusion-inhibiting.
  • the film Prior to coating with the adhesive, it is advantageous for the film to be subjected to an electrical discharge (corona) on one or both sides.
  • tapes according to the invention can be designed with PE cast film carrier as a carrier without perforation, but at the same time have a high puncture resistance and elastic at high temperature loads in the bonded state shrinkage and stretching processes can follow without that there are wrinkles.
  • the tear strength can be easily tested on the one hand in the subjective test. However, a better comparability is provided by a test according to EN 12025 with the so-called Elmendorf pendulum. Adhesive tapes have proved to be readily tearable in practice, the tear propagation force of which according to Elmendorf is not more than 15 N, preferably not more than 10 N.
  • the puncture resistance of film webs is determined according to DIN ISO 7765-2. Using electronics, a deformation occurring up to bursting - indicated in mm - and the work required for this - indicated in J - are measured.
  • the thickness of the carrier can be for the polyolefinic cast film adhesive tape in the range of 30 .mu.m to 200 .mu.m, preferably in the range of 50 .mu.m to 80 .mu.m.
  • adhesive tapes according to the invention for roofing adhesives based on their good aging resistance acrylate-based are used.
  • These acrylate adhesives can be applied as hot melt adhesives to be crosslinked by means of UV radiation.
  • a cover for the adhesive tape according to the invention for example, one or both sides of siliconized papers or films can be used, which may preferably be additionally filmed on one or both sides with PE.
  • the films are usually made of PE, PP (polypropylene) or corresponding coextrudates.
  • the adhesive is coated on this cover, then dried, crosslinked or polymerized and only then brought in a lamination onto the substrate. Also possible is the silicone coating on the back of the carrier, so that the adhesive tape can be wound on itself without an additional liner.
  • a scrim To limit the stretching can be incorporated between the adhesive and the carrier or within the adhesive layer a scrim. Its tensile strength should be below that of the actual carrier material. Such a construction initially allows a low-strain processing; but if the application requires an elongation, the scrim is severed with little effort without immediately entrain the carrier material. An effect on the temperature behavior of the tape was not found in the presence of such a gel. At the same time, such a scrim supports the rupture of the tape.
  • a double-sided siliconized glassine paper having a weight per unit area of 90 g / m 2 was coated with a dispersion acrylate adhesive Acronal V210 from BASF and dried by means of warm air and / or IR radiation so that an application weight of 200 g / m 2 remained after drying.
  • the coated web was cooled and a cast PE film (thickness: 70 ⁇ m, grammage: 65 g / m 2 ) laminated as a carrier.
  • this adhesive tape or its carrier is marked with the letter D.
  • a one-sided siliconized glassine paper having a weight per unit area of 90 g / m 2 was provided with a coating of 200 g / m 2 of Acylate AcResin 250 from BASF, which was then crosslinked directly by means of UV radiation.
  • the UV-C dose (measured with Power-Puck TM from EIT, Sterling, Virginia) was 70 mJ / cm 2 .
  • the coated web was cooled and in one operation a PET (polyethylene terephthalate) scrim (4 threads / cm in the machine direction, 2 threads / cm across the machine direction, thread size 78 dtex) and as a tape carrier a cast, micro-embossed LDPE Foil (thickness: 70 microns, grammage: 50 - 55 g / m 2 ) laminated. Subsequently, this tape or his carrier is marked with the letter E.
  • PET polyethylene terephthalate
  • a tape carrier a cast, micro-embossed LDPE Foil (thickness: 70 microns, grammage: 50 - 55 g / m 2 ) laminated.
  • a double-sided siliconized glassine paper having a weight per unit area of 90 g / m 2 was provided with a coating of 200 g / m 2 of Acylate AcResin 250 from BASF, which was then crosslinked directly by means of UV radiation.
  • the UV-C dose (measured with Power-Puck TM from EIT, Sterling, Virginia) is 70 mJ / cm 2 .
  • the coated web was cooled, and in one pass, a PET scrim (4 strands / cm in the machine direction, 2 strands / cm across, 90 dtex) and an aromatic polyether polyurethane film 50 microns thick and 50 grams in weight / m 2 laminated.
  • this adhesive tape or its carrier is marked with the letter F.
  • Table 2 Water vapor diffusibility of various adhesive tapes duct tape s d value in m A 2 - 3 B 20 - 25 G 1 - 2 H 0.2-0.4 C 1 - 2 e 15 - 20 F 0.2-0.4 duct tape Strain value ⁇ in% A 0 - 1 H 1 - 2 B 5 - 10 D 20 - 30 G 25 - 30 C 50 - 60 F 170-210
  • the data show that the tapes of the invention have a significantly higher flexibility than conventional LDPE blown films, as paper and PE nonwovens.
  • the PUR film carrier according to the invention is even significantly more flexible than that in FIG EP 1 847 577 A2 claimed carrier material.
  • Table 5 shows the values of the example bands and those of two comparison bands corresponding to the bands of the CH 686 673 A5 and the EP 1 847 577 A2 correspond: Table 5: Technical data for various adhesive tapes A C D e F Carrier film Material Production method Thickness [ ⁇ m] PE blown film 70 EVA / PE 70 PE cast film 70 PE cast film 70 PUR blown film 50 Adhesive material grammage 1g / m 2 ] UV-A 200 DA 230 DA 200 UV-A 200 UV-A 200 scrim Yes Yes Yes No Yes Yes s d 20-25 1-2 15-20 15-20 0.2-0.4 ⁇ [%] 5-10 50-60 20-30 20-30 170-210 TV1 wrinkles - - - - TV2 wrinkles - - - - EK [N] 8-15 7-9 5-7 6-8 7-10 WDS [J] 0.2 -0.3 0.4 -0.5 0.2 -0.3 0.2 -0.3 0.7-1.1 BK [N / cm] 20-25 20-25 10-15 20-25 35-

Description

Die vorliegende Erfindung betrifft ein technisches Klebeband, insbesondere zur Verklebung von Folien oder Vliesen im Baubereich, mit einem bandförmigen aus Kunststoff bestehenden Träger und mit einer zumindest auf einer Seite aufgetragenen druckempfindlichen Klebebeschichtung, die mit einem Flächengewicht von mindestens 100 g/m2 aufgetragen ist. Des Weiteren betrifft die Erfindung die Verwendung eines derartigen Klebebandes.The present invention relates to a technical adhesive tape, in particular for bonding films or nonwovens in the construction sector, with a band-shaped carrier consisting of plastic and having a pressure-sensitive adhesive coating applied at least on one side and applied at a basis weight of at least 100 g / m 2 . Furthermore, the invention relates to the use of such an adhesive tape.

Im Baubereich werden bei der Außendämmung von Bauwerken in der Regel sehr diffusionsoffene Materialien bevorzugt, um eingedrungene Feuchtigkeit schnell wieder verdunsten zu lassen. Werden solche großflächigen, diffusionsoffenen Dachunterspannbahnen lediglich an den Stoßstellen verklebt, wirkt sich aufgrund des vergleichsweise geringen Flächenanteils auch eine diffusionshemmende oder diffusionsdichte Verklebung nicht negativ aus. Anders sieht es bei der Verklebung von Fugen und Anschlüssen in engen Bauräumen und Ecken wie etwa im Bereich von Fenstereinbauten aus. Hier liegt der Anteil verklebter Flächen häufig bei 50 % oder mehr und hat dadurch erhebliche Auswirkungen auf das gesamte Diffusionsverhalten der Dachabdichtung. In solchen Bereichen werden daher diffusionsoffene Klebebänder bevorzugt.In the construction sector, in the case of external insulation of structures, very permeable materials are generally preferred in order to rapidly allow any moisture that has penetrated to evaporate again. If such large-area, vapor-permeable roof underlays are glued only at the joints, a diffusion-inhibiting or diffusion-tight bonding does not have a negative effect due to the comparatively small surface area. The situation is different with the bonding of joints and connections in confined spaces and corners, such as in the area of window installations. Here, the proportion of bonded surfaces is often 50% or more and thus has a significant impact on the overall diffusion behavior of the roof seal. In such areas, therefore, vapor-permeable adhesive tapes are preferred.

Ein Klebeband der eingangs genannten Art ist aus der EP 1 548 080 B1 bekannt. Um diesem Klebeband bei wenig aufwändiger Herstellungsweise eine gute Haftung auf rauhen Untergründen zu verleihen, ist dabei vorgesehen, dass die Klebebeschichtung ein Auftragsgewicht von 120 - 250 g/m2 aufweist und derart aufgetragen und vernetzt ist, dass das Klebeband eine bestimmte Anfangshaftung auf Stahl sowie eine bestimmte Klebkraft und Scherfestigkeit aufweist. Als Trägermaterialien des bekannten Klebebandes werden handelsübliche Papiere, Folien oder Textilien genannt. Papiere können dabei vorzugsweise durch eine PE-Kaschierung oder eine Wachsschicht wasserabweisend ausgerüstet sein, während PE- oder PP-Folien zur Verbesserung der Zugfestigkeit vorzugsweise mit einem Gelege verstärkt werden können. Durch die für die Klebebeschichtung verwendeten Klebstoffe auf der Basis von Polyacrylaten kann eine hohe Alterungs- und Feuchtigkeitsstabilität gewährleistet werden. Die EP 1 548 080 B1 beschreibt dabei im Besonderen die Verwendung eines UV-vernetzten Acrylatklebstoffes für Bänder der o. g. Art. Ein solcher Klebstoff enthält keine Emulgatoren und hat eine hohe Wasserbeständigkeit. Derartige Bänder sind daher unter dem Aspekt des verwendeten Klebstoffs grundsätzlich für feuchtigkeitsbeanspruchte Bereiche geeignet.An adhesive tape of the type mentioned is from the EP 1 548 080 B1 known. To this tape in a low consuming production way a good adhesion To give rough substrates, it is provided that the adhesive coating has a coating weight of 120 - 250 g / m 2 and is applied and crosslinked in such a way that the adhesive tape has a certain initial adhesion to steel and a certain bond strength and shear strength. As support materials of the known adhesive tape commercial papers, films or textiles are mentioned. Papers can preferably be provided with water repellency by means of a PE coating or a wax layer, while PE or PP films can preferably be reinforced with a scrim to improve the tensile strength. The adhesives used for the adhesive coating based on polyacrylates, a high aging and moisture stability can be ensured. The EP 1 548 080 B1 describes in particular the use of a UV-crosslinked acrylate adhesive for tapes of the type mentioned above. Such an adhesive contains no emulsifiers and has a high water resistance. Such tapes are therefore basically suitable for moisture-stressed areas in terms of the adhesive used.

Die CH 687 328 A5 beschreibt ein Klebeband mit einem beschichteten Papierträger zur Verklebung von Dachbahnen. Durch eine PE- (Polyethylen-)Beschichtung wird dabei die Dampfdiffusionsfähigkeit des Papiers "kontrolliert". Da aber zur Isolierung im Außenbereich feuchtigkeitsstabile Materialien benötigt werden, werden solche Bänder in der Regel nicht im Außenbereich eingesetzt.The CH 687 328 A5 describes an adhesive tape with a coated paper backing for bonding roofing membranes. A PE (polyethylene) coating "controls" the vapor diffusion capacity of the paper. However, since moisture-stable materials are needed for insulation outdoors, such tapes are generally not used outdoors.

Des Weiteren beschreibt auch die CH 686 673 A5 ein Klebeband mit einem PE-Folienträger der ebenfalls "dampfdurchlässig" sein soll. Klebebänder mit derartigen Papier- oder Folienträgem werden in der Regel ebenfalls nur im Hausinnenbereich zur Abdichtung von Dampfsperrfolien oder Dampfbremsen eingesetzt. Da sie häufig mit Acrylatklebstoffen auf Dispersionsbasis ausgerüstet sind, ist ihre Verwendung nach Herstellerangaben auf trockene Innenbereiche beschränkt.Furthermore, also describes the CH 686 673 A5 an adhesive tape with a PE film carrier which should also be "vapor permeable". Adhesive tapes with such paper or film pastes are also usually used only in the interior of the house for sealing vapor barrier films or vapor barriers. As they are often based on dispersion-based acrylate adhesives, their use according to the manufacturer is restricted to dry indoor areas.

In keinem der drei genannten Dokumente sind Messmethoden zur Bestimmung der Dampfdurchlässigkeit, noch Werte dieser Größe für die beanspruchten Bänder angegeben.In none of the three documents mentioned are measurement methods for determining the vapor permeability nor values of this size for the claimed bands.

Zur Beschreibung des Diffusionsvermögens eines Materials wird jedoch beispielsweise die Wasserdampf-Diffusionsstromdichte V - angegeben in g/m2 * Tage - gemäß DIN EN ISO 7783-1 bestimmt. Dabei wird der Gewichtsverlust eines mit einer Salzlösung gefüllten und mit dem Prüfling abgedeckten Behälters über die Zeit bestimmt. Eine übliche Angabe ist auch die der wasserdampfdiffusionsäquivalenten Luftschichtdicke Sd - angegeben in m -, welche sich aus der Wasserdampf-Diffusionsstromdichte berechnen lässt. Hierfür ist die Norm DIN 52615 verbindlich. In Fachkreisen werden Materiaüen mit einem sd-Wert ≤ 0,5 m üblicherweise als diffusionsoffen, solche mit einem Sd-Wert von 0,5 m -1500 m als diffusionshemmend und Materialien mit einem Sd-Wert > 1500 m als diffusionsdicht bezeichnet.For the description of the diffusivity of a material, however, for example, the water vapor diffusion current density V - in g / m 2 * days - determined according to DIN EN ISO 7783-1. The weight loss of a filled with a saline solution and covered with the test specimen container is determined over time. A common statement is also that of the water vapor diffusion equivalent air layer thickness S d - given in m -, which can be calculated from the water vapor diffusion current density. For this purpose, the standard DIN 52615 is binding. In technical circles, materials with an s d value ≤ 0.5 m are usually referred to as diffusion-open, those with an S d value of 0.5 m-1500 m as diffusion-inhibiting materials with an S d value> 1500 m as diffusion-tight ,

Die EP 1 847 577 A2 beschreibt ein Klebeband mit einem Folienträger aus EVA (Ethylvinylacetat) und TPE-E (Ether-Ester-Blockcopolymer) zur diffusionsoffenen Verklebung von Dachbahnen oberhalb der Dämmschicht. Als bedeutsam wird dabei neben einem niedrigen sd-Wert von ≤ 12 m ein spezielles Dehnungsverhalten herausgestellt. Hierfür wird als charakteristischer Parameter ein Differenzwert zwischen der prozentualen Gesamtdehnung bei Belastung und der prozentualen bleibenden Dehnung nach Belastung (im Folgenden: Dehnungsparameter) eingeführt. Dieser Parameter, für den in Anlehnung an die Norm DIN 53360 eine spezielle Methode zur Ermittlung beschrieben wird, soll gemäß der EP 1 847 577 A2 zwischen 6 und 80 Prozent liegen.The EP 1 847 577 A2 describes an adhesive tape with a film carrier made of EVA (ethyl vinyl acetate) and TPE-E (ether-ester block copolymer) for the vapor-permeable bonding of roofing membranes above the insulating layer. In addition to a low s d value of ≤ 12 m, a special elongation behavior is emphasized. For this purpose, a difference value between the percentage total strain under load and the percentage permanent strain after stress (in the following: strain parameter) is introduced as a characteristic parameter. This parameter, for which a specific method of determination is described on the basis of DIN 53360, is to be used in accordance with EP 1 847 577 A2 between 6 and 80 percent.

Zur Ermittlung der elastischen Dehnungseigenschaften wird dabei eine Bestimmung in Anlehnung an die DIN-Norm DIN 53360 herangezogen, wobei eine Längenänderung von einem 25 mm breiten Probenstreifen unter einer statischen Last von 1 kg für 30 Minuten und eine Längenänderung nach Entlastung des Probenstreifens ermittelt werden. Aus diesen beiden Werten lässt sich als Parameter die Differenz aus der Gesamtdehnung und der bleibenden Dehnung berechnen.To determine the elastic elongation properties, a determination based on the DIN standard DIN 53360 is used, wherein a change in length of a 25 mm wide sample strip under a static load of 1 kg for 30 minutes and a change in length after discharge of the sample strip are determined. From these two values, the difference between the total strain and the residual strain can be calculated as a parameter.

Im Detail werden dabei zur Durchführung der Messungen aus Trägermaterialproben längs zur Herstellrichtung je 3 Probekörper von 25 mm Breite und mindestens 250 mm Länge entnommen. Auf den Probekörpern wird mit zwei dünnen Markierungen eine Messlänge von 100 ± 0.5 mm eingezeichnet. Die eingezeichneten Messmarken müssen auf den Probekörpern im gleichen Abstand zu den Probekörper-Enden liegen. An den Marken ist der Verlauf der Längsachse einzuzeichnen.In detail, 3 specimens of 25 mm width and at least 250 mm length are taken in each case for carrying out the measurements from carrier material samples along the direction of production. On the specimens, a gauge length of 100 ± 0.5 mm is drawn with two thin markers. The marked marks must lie on the specimens at the same distance from the specimen ends. At the marks the course of the longitudinal axis is to draw.

Die Gesamtdehnung einer Probe ist das Verhältnis der Gesamtlängenänderung zur ursprünglichen Messlänge des Probekörpers. Dabei ist die Gesamtlängenänderung der Unterschied zwischen der Messlänge bei konstanter Zugbeanspruchung nach der Beanspruchungsdauer und der ursprünglichen Messlänge des Probekörpers.The total strain of a specimen is the ratio of the total length change to the original gauge length of the specimen. The total length change is the difference between the measuring length at constant tensile stress after the stress duration and the original measuring length of the test specimen.

Die bleibende Dehnung ist das Verhältnis der bleibenden Längenänderung zur ursprünglichen Messlänge des Probekörpers. Dabei ist die bleibende Längenänderung nach Entlastung der Unterschied zwischen der Messlänge, nach der Entlastung des Probekörpers, d. h. nach Wegnahme der Zugbeanspruchung nach der festgelegten Zeitdauer und der ursprünglichen Messlänge des Probekörpers.The permanent strain is the ratio of the permanent change in length to the original gauge length of the specimen. The permanent change in length after relief is the difference between the measuring length after the test specimen has been relieved, d. H. after removal of the tensile stress after the specified period of time and the original measuring length of the test specimen.

Die Prüfungen werden bei einer Bedingung von 23 ± 2 °C und einer relativen Luftfeuchte von 50 % durchgeführt. Die Proben sind vor den Messungen für 24 Stunden im gleichen Klima zu akklimatisieren. Die 25 mm breiten Probestreifen werden an einer oberen Klemmbacke eingespannt, das untere Ende wird mit einer Klemme und einem Gewicht von 1 kg belastet. Nach 30 Minuten wird der Abstand der Messmarken, unter Zugspannung, abgelesen. Nach Entlastung, d. h. Wegnehmen des 1-kg-Gewichtes, wird nach weiteren 30 Minuten wieder die Dehnung gemessen. Aus diesen Werten lassen sich die Gesamtdehnung und die bleibende Dehnung in Prozent ausrechnen. Danach wird die Differenz zwischen der Gesamtdehnung (statische Dehnung) und der bleibenden Dehnung bestimmt.The tests are carried out at a condition of 23 ± 2 ° C and a relative humidity of 50%. The samples are to be acclimatised for 24 hours in the same climate before the measurements. The 25 mm wide test strips are clamped to an upper jaw, the lower end is loaded with a clamp and a weight of 1 kg. After 30 minutes, the distance between the measuring marks, under tension, is read. After relief, ie removal of the 1 kg weight, the strain is measured again after another 30 minutes. From these values, the total strain and the permanent strain in percent can be calculated. Then the difference between the total strain (static strain) and the residual strain is determined.

Für vorbekannte PE- und PS- (Polystyrol-)Folienträger wurden gemäß der EP 1 847 577 A2 Parameterwerte im Bereich von 0,13 bis 5,13 Prozent ermittelt. Diese Träger werden als ungeeignet angesehen.Prior art PE and PS (polystyrene) film supports were prepared according to the EP 1 847 577 A2 Parameter values in the range of 0.13 to 5.13 percent determined. These carriers are considered unsuitable.

Die Druckschrift enthält keine quantitativen Angaben zur Grammatur der Klebebeschichtung. Die geforderte Dehnfähigkeit in Kombination mit einem niedrigen Sd-Wert weisen dabei auch Bänder mit perforierter PE-Folie als Träger auf. Nachteilig kann hier ein möglicher Kiebstoffdurchschiag durch die Perforationslöcher sein.The document contains no quantitative information on the grammage of the adhesive coating. The required extensibility in combination with a low S d value also show bands with perforated PE film as a carrier. The disadvantage here can be a possible Kiebstoffdurchschiag through the perforation holes.

Diffusionsoffen sind auch aus dem Handel bekannte Klebebänder mit Papier- oder Vlies-Träger (Tyvek®), die aber in der Regel eine sehr geringe Dehnbarkeit besitzen.Also known from the trade are adhesive tapes with paper or nonwoven support (Tyvek®) which are known for diffusion, but which as a rule have a very low extensibility.

Neben den Anforderungen an die Diffusionseigenschaften und die Dehnbarkeit der Klebebänder wird wegen einer erwünschten einfachen Handhabung bei der Verarbeitung auf Baustellen auch oft eine Reißbarkeit von Hand bevorzugt. Dies gilt insbesondere für die Verarbeitung im Dachbereich, wo es häufig nicht praktikabel ist, mit zusätzlichen Schneidwerkzeugen zu hantieren.In addition to the requirements for the diffusion properties and the extensibility of the adhesive tapes, manual tear properties are often preferred because of the desirability of ease of handling in construction on construction sites. This is especially true for the processing in the roof area, where it is often not practical to handle with additional cutting tools.

Gegenläufig zu dieser Forderung verhält sich, dass an die Folienträger der genannten Klebebänder auch gewisse Mindestanforderungen hinsichtlich einer z. B. nach DIN ISO 7765-2 zu bestimmenden Durchstoßfestigkeit gestellt werden.Contrary to this requirement behaves that to the film carrier of said tapes and certain minimum requirements with respect to a z. B. according to DIN ISO 7765-2 to be determined puncture resistance.

Schließlich ist zu beachten, dass im Außenbereich die verklebten Bänder zumindest vorübergehend direkter Sonneneinstrahlung ausgesetzt sind. Dies trifft insbesondere dann zu, wenn - wie im Dachbereich oft üblich - die Dachbahnen schwarz eingefärbt sind. Bei den für den Innenbereich konzipierten Folienbändern, wie sie in der CH 686 673 A5 beschrieben sind und deren Träger als "typische PE-Folien" in den Vergleichsbeispielen in der EP 1 847 577 A2 beschrieben sind, kommt es bei Erwärmung im verklebten Zustand aufgrund der mangelnden Flexibilität oberhalb von ca. 80 °C zu einem Faltenwurf. Dieser geht zwar nach Abkühlung wieder zurück, es können aber Restöffnungen verbleiben, die später die Dichtigkeit beeinträchtigen.Finally, it should be noted that outside the glued tapes are at least temporarily exposed to direct sunlight. This is especially true when - as is often the case in the roof area - the roofing membranes are dyed black. For the interior designed foil tapes as used in the CH 686 673 A5 and their support as "typical PE films" in the comparative examples in the EP 1 847 577 A2 are described, it comes when heated in the bonded state due to the lack of flexibility above about 80 ° C to a drape. Although this goes back after cooling back, but it may remain residual openings, which later affect the tightness.

Der vorliegenden Erfindung liegt die Aufgabe zugrunde, ein, insbesondere im Außenbereich von Gebäuden einsetzbares, Klebeband der eingangs genannten Art zu entwickeln, das sowohl wasserdicht, als auch flexibel ist, von Hand zu reißen ist aber eine hohe Durchstoßfestigkeit besitzt und auch bei hohen Temperaturbelastungen im verklebten Zustand Schrumpf- und Dehnprozessen elastisch folgen kann, ohne dass es zu Faltenbildungen kommt. In einer besonderen Ausführung soll dieses Klebeband zusätzlich diffusionsoffen sein.The present invention has for its object to develop a, especially in the outdoor area of buildings usable, adhesive tape of the type mentioned, which is both waterproof, as well as flexible to tear by hand but has a high puncture resistance and at high temperature loads in Bonded state elastic shrinkage and stretching processes can follow, without causing wrinkles. In a particular embodiment, this adhesive tape should also be open to diffusion.

Diese Aufgabe wird mit einem Klebeband der eingangs genannten Art gelöst, bei dem der Träger aus einer gegossenen Polyolefinfolie besteht und derart elastisch und plastisch dehnbar ist, dass ein Differenzwert Δε zwischen der prozentualen Gesamtdehnung bei Belastung und der prozentualen bleibenden Dehnung nach anschließender Entlastung im Bereich von 15 bis 50 Prozent liegt, wobei bei der Messung in Anlehnung an DIN 53360 an 25 mm breiten und mindestens 250 mm langen, längs zur Herstellungsrichtung der Folie entnommenen Probenstreifen unter einer für 30 Minuten aufgebrachten statischen Last von 1 kg die Feststellung der Gesamtdehnung erfolgt und die bleibende Dehnung 30 Minuten nach Entlastung des Probenstreifens ermittelt wird, wobei die Klebebeschichtung aus einem UV-vernetzten oder UV-polymerisierten Acrylatklebstoff besteht.This object is achieved with an adhesive tape of the type mentioned above, in which the carrier consists of a cast polyolefin film and is elastically and plastically extensible such that a difference Δε between the total percentage strain during loading and the percentage permanent elongation after subsequent relief in the range of 15 to 50 percent, wherein in the measurement according to DIN 53360 on 25 mm wide and at least 250 mm long, taken along the direction of manufacture of the film sample strip under a static load of 1 kg applied for 30 minutes, the determination of the total elongation and the lasting elongation is determined 30 minutes after discharge of the sample strip, wherein the adhesive coating consists of a UV-crosslinked or UV-polymerized acrylate adhesive.

Ein wesentlicher Unterschied zwischen erfindungsgemäßen und den bekanntermaßen eingesetzten Klebebändern besteht dabei insbesondere im erfindungsgemäßen Materialaufbau des Trägers aus einer gegossenen Polyolefinfolie.An essential difference between adhesive tapes according to the invention and the tapes known to be used consists in particular in the material structure of the support according to the invention of a cast polyolefin film.

Polyolefinfolien, insbesondere Polyethylenfolien, werden üblicherweise entweder mittels Blasextrusion oder im Gießverfahren hergestellt. Sowohl Gießfolien als auch Blasfolien können dabei als coextrudierte Folien mit bis zu sieben unterschiedlichen Schichten gefertigt werden.Polyolefin films, especially polyethylene films, are usually made by either blown extrusion or by casting. Both cast films and blown films can be produced as coextruded films with up to seven different layers.

Bei der Blasextrusion wird die aus einem Extruder austretende geschmolzene Polymermasse durch eine Ringdüse zu einem Schlauch geformt. Dieser Schlauch wird in Länge und Breite gestreckt, so dass auch die entstehende Folie in Längs- und in Querrichtung gestreckt wird. Der Schlauch wird durch einen inneren und einen äußeren Luftstrom gekühlt, flachgelegt und zu zwei Folienbahnen aufgeschnitten.In blown extrusion, the molten polymer mass exiting an extruder is formed into a tube by an annular die. This tube is stretched in length and width, so that the resulting film is stretched in the longitudinal and transverse directions. The tube is cooled by an inner and an outer air flow, laid flat and cut into two film webs.

Im erfindungsgemäß zur Herstellung des polyolefinischen Klebebandträgers eingesetzten Gieß- oder Flachfolienverfahren wird die geschmolzene Polymermasse durch eine Breitschlitzdüse auf eine Kühlwalze ("chill roll") aufgetragen. Die Walzengeschwindigkeit ist in der Regel höher als die Austrittsgeschwindigkeit an der Düse. Dadurch wird die Dicke der entstehenden Folie eingestellt und die Folie selbst in Längsrichtung orientiert. Die Kühlwalze kann eine Prägung besitzen, die sich dann als Muster in der Folie wiederfindet.In the casting or flat film method used according to the invention for the production of the polyolefinic adhesive tape carrier, the molten polymer composition is applied to a chill roll through a slot die. The roller speed is usually higher than the exit speed at the nozzle. As a result, the thickness of the resulting film is adjusted and the film itself oriented in the longitudinal direction. The chill roll may have an embossment, which then finds itself as a pattern in the film.

Gießfolien besitzen durch ihre schnellere Abkühlung eine geringere Kristallinität als Blasfolien und dadurch eine höhere Geschmeidigkeit. Überraschenderweise hat sich gezeigt, dass für eine solchermaßen hergestellte Polyolefinfolie, insbesondere dann, wenn sie einen Polyethlyenanteil von mindestens 50 % aufweist, mehrfach höhere Werte des Differenzwertes Aε zwischen der prozentualen Gesamtdehnung bei Belastung und der prozentualen bleibenden Dehnung nach anschließender Entlastung erzielbar sind. Insbesondere können für diesen Parameter Werte im Bereich von 15 Prozent bis 50 Prozent, vorzugsweise von 20 Prozent bis 30 Prozent eingestellt werden, was die Folie für den erfindungsgemäßen Klebebandträger prädestiniert.Cast films have a lower crystallinity than blown films due to their faster cooling and thus a higher smoothness. Surprisingly, it has been shown that for a polyolefin film produced in this way, especially when it has a polyethylene content of at least 50%, multiply higher values of the difference value Aε between the total percentage strain under load and the percentage permanent elongation after subsequent relief can be achieved. In particular, values in the range from 15 percent to 50 percent, preferably from 20 percent to 30 percent, can be set for this parameter, which predestines the film for the adhesive tape backing of the invention.

Die wasserdampfdiffusionsäquivalente Luftschichtdicke sd kann dabei im Bereich von ≥ 15 m nach DIN 52615 liegen, insbesondere in einem Bereich von 15 m bis 20 m. Der Träger ist also diffusionshemmend.The water vapor diffusion equivalent air layer thickness s d can be in the range of ≥ 15 m according to DIN 52615, in particular in a range of 15 m to 20 m. The carrier is thus diffusion-inhibiting.

Um für eine selbstklebende Ausrüstung des Trägers eine gute Verankerung auch polarer Klebstoffe (Acrylate) auf der zunächst unpolaren Folie zu erreichen, kann die Folie vor der Beschichtung mit dem Klebstoff mit Vorteil ein- oder beidseitig einer elektrischen Entladung (Corona) ausgesetzt werden.In order to achieve a good anchoring of polar adhesives (acrylates) on the first non-polar film for a self-adhesive equipment of the carrier, the Prior to coating with the adhesive, it is advantageous for the film to be subjected to an electrical discharge (corona) on one or both sides.

Wie aus den nachfolgend dargestellten Beispielen hervorgeht, können erfindungsgemäße Bänder mit PE-Gießfolien-Träger als Träger ohne Perforation handreißbar ausgestaltet sein, wobei sie aber gleichzeitig eine hohe Durchstoßfestigkeit besitzen und auch bei hohen Temperaturbelastungen im verklebten Zustand Schrumpf- und Dehnprozessen elastisch folgen können, ohne dass es zu Faltenbildungen kommt.As can be seen from the examples below, tapes according to the invention can be designed with PE cast film carrier as a carrier without perforation, but at the same time have a high puncture resistance and elastic at high temperature loads in the bonded state shrinkage and stretching processes can follow without that there are wrinkles.

Die Reißbarkeit kann einerseits im subjektiven Test einfach geprüft werden. Eine bessere Vergleichbarkeit liefert jedoch eine Prüfung nach EN 12025 mit dem sogenannten Elmendorf-Pendel. Als gut reißbar haben sich dabei in der Praxis Klebebänder erwiesen, deren Weiterreißkraft nach Elmendorf nicht mehr als 15 N, vorzugsweise nicht mehr als 10 N, beträgt.The tear strength can be easily tested on the one hand in the subjective test. However, a better comparability is provided by a test according to EN 12025 with the so-called Elmendorf pendulum. Adhesive tapes have proved to be readily tearable in practice, the tear propagation force of which according to Elmendorf is not more than 15 N, preferably not more than 10 N.

Wie bereits erwähnt, wird die Durchstoßfestigkeit von Folienbahnen nach der DIN ISO 7765-2 bestimmt. Dabei werden unter Einsatz von Elektronik eine bis zum Bersten auftretende Verformung - angegeben in mm - und die dafür erforderliche Arbeit - angegeben in J - gemessen.As already mentioned, the puncture resistance of film webs is determined according to DIN ISO 7765-2. Using electronics, a deformation occurring up to bursting - indicated in mm - and the work required for this - indicated in J - are measured.

Die Dicke des Trägers kann dabei für das polyolefinische Gießfolienklebeband im Bereich von 30 µm bis 200 µm, bevorzugt im Bereich von 50 µm bis 80 µm, liegen. Für erfindungsgemäße Klebebänder zur Dachabdichtung werden aufgrund ihrer guten Alterungsbeständigkeit Haftklebstoffe auf Acrylatbasis eingesetzt. Diese Acrylatklebstoffe können als mittels UV-Strahlung zu vernetzende Schmelzklebstoffe aufgetragen werden. Grundsätzlich möglich ist auch der Einsatz von Acrylat-Monomermischungen oder Acrylat-Präpolymeren, die nach der Beschichtung mittels UV-Strahlung polymerisiert werden.The thickness of the carrier can be for the polyolefinic cast film adhesive tape in the range of 30 .mu.m to 200 .mu.m, preferably in the range of 50 .mu.m to 80 .mu.m. For adhesive tapes according to the invention for roofing adhesives based on their good aging resistance acrylate-based are used. These acrylate adhesives can be applied as hot melt adhesives to be crosslinked by means of UV radiation. In principle, it is also possible to use acrylate monomer mixtures or acrylate prepolymers which are polymerized after the coating by means of UV radiation.

Als Abdeckung für das erfindungsgemäße Klebeband können beispielsweise ein- oder beidseitig silikonisierte Papiere oder Folien eingesetzt werden, die bevorzugt zusätzlich ein- oder beidseitig mit PE befilmt sein können. Die Folien bestehen in der Regel aus PE, PP (Polypropylen) oder aus entsprechenden Coextrudaten. In der Regel wird der Klebstoff auf diese Abdeckung beschichtet, dann getrocknet, vernetzt oder polymerisiert und erst dann in einem Kaschiervorgang auf das Trägermaterial gebracht. Möglich ist auch die Silikonbeschichtung der Trägerrückseite, so dass das Klebeband ohne zusätzlichen Liner auf sich selbst gewickelt werden kann.As a cover for the adhesive tape according to the invention, for example, one or both sides of siliconized papers or films can be used, which may preferably be additionally filmed on one or both sides with PE. The films are usually made of PE, PP (polypropylene) or corresponding coextrudates. In general, the adhesive is coated on this cover, then dried, crosslinked or polymerized and only then brought in a lamination onto the substrate. Also possible is the silicone coating on the back of the carrier, so that the adhesive tape can be wound on itself without an additional liner.

Zur Begrenzung der Dehnung kann zwischen Klebstoff und Träger oder innerhalb der Klebstoffschicht ein Gittergelege eingearbeitet sein. Dessen Reißfestigkeit sollte unterhalb der des eigentlichen Trägermaterials angeordnet sein. Eine solche Konstruktion erlaubt zunächst eine dehnungsarme Verarbeitung; wenn aber die Anwendung eine Dehnung erfordert, so wird mit wenig Kraftaufwand das Gelege durchtrennt, ohne gleich das Trägermaterial mitzureißen. Eine Auswirkung auf das Temperaturverhalten des Bandes wurde bei Vorhandensein eines derartigen Geleges nicht festgestellt. Gleichzeitig unterstützt ein solches Fadengelege die Reißbarkeit des Bandes.To limit the stretching can be incorporated between the adhesive and the carrier or within the adhesive layer a scrim. Its tensile strength should be below that of the actual carrier material. Such a construction initially allows a low-strain processing; but if the application requires an elongation, the scrim is severed with little effort without immediately entrain the carrier material. An effect on the temperature behavior of the tape was not found in the presence of such a gel. At the same time, such a scrim supports the rupture of the tape.

Weitere vorteilhafte Ausführungen der Erfindung sind in den Unteransprüchen und der nachfolgenden speziellen Beschreibung enthalten. Anhand mehrerer Ausführungsbeispiele wird dabei die Erfindung näher erläutert.Further advantageous embodiments of the invention are contained in the subclaims and the following specific description. On the basis of several embodiments, the invention will be explained in more detail.

Beispiel 1 (Vergleichsbeispiel)Example 1 (comparative example)

Ein doppelseitig silikonisiertes Glassinepapier mit einem Flächengewicht von 90 g/m2 wurde mit einem Dispersionsacrylatklebstoff Acronal V210 der Fa. BASF beschichtet und mittels Warmluft und/oder IR-Strahlung getrocknet, so dass nach der Trocknung ein Auftragsgewicht von 200 g/m2 verblieb. Die beschichtete Bahn wurde abgekühlt und es wurde eine gegossene PE-Folie (Dicke: 70 µm, Grammatur: 65 g/m2) als Träger zukaschiert. Nachfolgend ist dieses Klebeband bzw. sein Träger mit dem Buchstaben D gekennzeichnet.A double-sided siliconized glassine paper having a weight per unit area of 90 g / m 2 was coated with a dispersion acrylate adhesive Acronal V210 from BASF and dried by means of warm air and / or IR radiation so that an application weight of 200 g / m 2 remained after drying. The coated web was cooled and a cast PE film (thickness: 70 μm, grammage: 65 g / m 2 ) laminated as a carrier. Hereinafter, this adhesive tape or its carrier is marked with the letter D.

Beispiel 2 (erfindungsgemäß)Example 2 (according to the invention)

Ein einseitig silikonisiertes Glassinepapier mit einem Flächengewicht von 90 g/m2 wurde mit einer Beschichtung von 200 g/m2 UV-Acylat AcResin 250 der Fa. BASF versehen, die direkt anschließend mittels UV-Strahlung vernetzt wurde. Die UV-C-Dosis (gemessen mit Power- PuckTM der Fa. EIT, Sterling, Virginia) betrug 70 mJ/cm2. Die beschichtete Bahn wurde abgekühlt und in einem Arbeitsgang wurde ein PET-(Polyethylenterephtalat-)Fadengelege (4 Fäden/cm in Laufrichtung, 2 Fäden/cm quer zur Laufrichtung, Fadenstärke 78 dtex) und als Klebebandträger eine gegossene, mit einer Mikroprägung versehene LDPE-Folie (Dicke: 70 µm, Grammatur: 50 - 55 g/m2) zukaschiert. Nachfolgend ist dieses Klebeband bzw. sein Träger mit dem Buchstaben E gekennzeichnet.A one-sided siliconized glassine paper having a weight per unit area of 90 g / m 2 was provided with a coating of 200 g / m 2 of Acylate AcResin 250 from BASF, which was then crosslinked directly by means of UV radiation. The UV-C dose (measured with Power-Puck ™ from EIT, Sterling, Virginia) was 70 mJ / cm 2 . The coated web was cooled and in one operation a PET (polyethylene terephthalate) scrim (4 threads / cm in the machine direction, 2 threads / cm across the machine direction, thread size 78 dtex) and as a tape carrier a cast, micro-embossed LDPE Foil (thickness: 70 microns, grammage: 50 - 55 g / m 2 ) laminated. Subsequently, this tape or his carrier is marked with the letter E.

Beispiel 3 (erfindungsgemäß)Example 3 (according to the invention)

Ein doppelseitig silikonisiertes Glassinepapier mit einem Flächengewicht von 90 g/m2 wurde mit einer Beschichtung von 200 g/m2 UV-Acylat AcResin 250 der Fa. BASF versehen, die direkt anschließend mittels UV-Strahlung vernetzt wurde. Die UV-C-Dosis (gemessen mit Power-PuckTM der Fa. EIT, Sterling, Virginia) beträgt 70 mJ/cm2. Die beschichtete Bahn wurde abgekühlt und in einem Arbeitsgang wurden ein PET-Fadengelege (4 Fäden/cm in Laufrichtung, 2 Fäden/cm quer zur Laufrichtung, Fadenstärke 78 dtex) und eine aromatische Polyetherpolyurethanfolie mit einer Dicke von 50 µm und einer Grammatur von 50 g/m2 zukaschiert. Nachfolgend ist dieses Klebeband bzw. sein Träger mit dem Buchstaben F gekennzeichnet.A double-sided siliconized glassine paper having a weight per unit area of 90 g / m 2 was provided with a coating of 200 g / m 2 of Acylate AcResin 250 from BASF, which was then crosslinked directly by means of UV radiation. The UV-C dose (measured with Power-Puck ™ from EIT, Sterling, Virginia) is 70 mJ / cm 2 . The coated web was cooled, and in one pass, a PET scrim (4 strands / cm in the machine direction, 2 strands / cm across, 90 dtex) and an aromatic polyether polyurethane film 50 microns thick and 50 grams in weight / m 2 laminated. Hereinafter, this adhesive tape or its carrier is marked with the letter F.

Weitere VergleichsbeispieleFurther comparative examples

Als weitere Vergleichsbeispiele dienten Klebebänder gemäß dem Stand der Technik. Diese Klebebänder bzw. deren Träger sind nachfolgend folgendermaßen bezeichnet:

  • A - kunststoffbeschichteter Papierträger wie in der CH 687 328 A5 mit einem UV-Acrylatklebstoff (UV-A),
  • B - LDPE-Folienträger (Blasfolie, Grammatur: 70 g/m2) wie in der CH 686 673 A5 , mit einem Fadengelege und einem UV-Acrylatklebstoff (UV-A),
  • C - EVA/TPE-Folienträger (Grammatur: 70 g/m2) wie in der EP 1 847 577 A2 , mit einem Fadengelege und einem Dispersionsacrylatklebstoff (D-A),
  • G - Träger aus perforierter PE-Folie (70 g/m2), mit einem Fadengelege und einem UV-Acrylatklebstoff (UV-A),
  • H - PE-Vliesträger (Tyvek®) (Grammatur: 60 g/m2) mit einem UV-Acrylatklebstoff (UV-A).
Adhesive tapes according to the prior art were used as further comparative examples. These adhesive tapes or their carriers are designated as follows:
  • A - plastic coated paper carrier as in CH 687 328 A5 with a UV acrylate adhesive (UV-A),
  • B - LDPE film carrier (blown film, grammage: 70 g / m 2 ) as in CH 686 673 A5 , with a scrim and a UV-acrylate adhesive (UV-A),
  • C - EVA / TPE film carrier (grammage: 70 g / m 2 ) as in EP 1 847 577 A2 , with a scrim and a dispersion acrylate adhesive (DA),
  • G - carrier made of perforated PE film (70 g / m 2 ), with a scrim and a UV-acrylate adhesive (UV-A),
  • H - PE nonwoven backing (Tyvek®) (weight: 60 g / m 2 ) with a UV acrylic adhesive (UV-A).

Zur Beurteilung der Handreißbarkeit wurde zunächst an Klebebändern der Breite 60 mm die Reißkraft nach Elmendorf bestimmt. Dabei wurden die in Tabelle 1 wiedergegebenen Werte ermittelt. Tabelle 1: Reißkraft verschiedener Klebebänder nach Elmendorf Klebeband Elmendorf-Kraft in N A 3 - 4 B 8 - 15 C 7 - 9 D 5 - 7 E 6 - 8 F 7 - 10 To assess the hand tearability, the tear strength of Elmendorf was first determined on adhesive tapes of width 60 mm. The values shown in Table 1 were determined. Table 1: Tensile strength of various adhesive tapes according to Elmendorf duct tape Elmendorf force in N A 3 - 4 B 8 - 15 C 7 - 9 D 5 - 7 e 6 - 8 F 7 - 10

Zur Beurteilung des Diffusionsverhaltens wurden dann an Klebebandmustern mit einer Probenfläche von 20 cm2 die nachfolgend in Tabelle 2 wiedergegebenen Sd-Werte bestimmt.To assess the diffusion behavior, the S d values shown below in Table 2 were then determined on adhesive tape samples having a sample area of 20 cm 2 .

Die Flexibilität der Träger der vorgenannten Klebebänder (ohne Gelege und Klebeschicht) wurde unter den o. g. Bedingungen bzw. entsprechend der Beschreibung in der EP 1 847 577 A2 aus dem Differenzwert der prozentualen Gesamtdehnung bei 30-minütiger Belastung eines 25 mm breiten Streifens mit einer Masse von 1 kg und der prozentualen bleibenden Dehnung nach Entlastung bestimmt. Dabei ergaben sich die in Tabelle 3 aufgeführten Werte. Tabelle 2: Wasserdampfdiffusionsfähigkeit verschiedener Klebebänder Klebeband sd-Wert in m A 2 - 3 B 20 - 25 G 1 - 2 H 0,2 - 0,4 C 1 - 2 E 15 - 20 F 0,2 - 0,4 Tabelle 3: Dehnungsverhalten verschiedener Klebebandträger Klebeband Dehnungswert Δε in % A 0 - 1 H 1 - 2 B 5 - 10 D 20 - 30 G 25 - 30 C 50 - 60 F 170 - 210 The flexibility of the carrier of the aforementioned adhesive tapes (without scrim and adhesive layer) was under the above conditions or as described in the EP 1 847 577 A2 determined from the difference in percent of total elongation at 30 minutes loading of a 25 mm wide strip with a mass of 1 kg and the percent residual elongation after release. This resulted in the values listed in Table 3. Table 2: Water vapor diffusibility of various adhesive tapes duct tape s d value in m A 2 - 3 B 20 - 25 G 1 - 2 H 0.2-0.4 C 1 - 2 e 15 - 20 F 0.2-0.4 duct tape Strain value Δε in% A 0 - 1 H 1 - 2 B 5 - 10 D 20 - 30 G 25 - 30 C 50 - 60 F 170-210

Die Daten belegen, dass die erfindungsgemäßen Bänder eine deutlich höhere Flexibilität aufweisen als übliche LDPE-Blasfolien, als Papier und PE-Vliese. Der erfindungsgemäße PUR-Folienträger ist sogar deutlich flexibler als das in EP 1 847 577 A2 beanspruchte Trägermaterial.The data show that the tapes of the invention have a significantly higher flexibility than conventional LDPE blown films, as paper and PE nonwovens. The PUR film carrier according to the invention is even significantly more flexible than that in FIG EP 1 847 577 A2 claimed carrier material.

Bei Verklebung der aus den in Tabelle 3 aufgeführten Trägermaterialien hergestellten Klebebänder auf schwarze Dachbahnen zeigten sich bei Temperaturbelastung deutlich die Vorzüge einer hohen Flexibilität: während das Band mit der herkömmlichen PEBlasfolie einen deutlichen Faltenwurf zeigte, blieben die Verklebungen von erfindungsgemäßen Bändern aus Folienträgern mit höheren Dehnungsparametern unverändert.When bonding the adhesive tapes produced from the carrier materials listed in Table 3 to black roofing membranes, the advantages of high flexibility clearly showed on exposure to heat: while the tape with the conventional PE blown film exhibited a pronounced drape, the bonds of tapes according to the invention made of film carriers with higher elongation parameters remained unchanged ,

Die Durchstoßfestigkeit verschiedener Klebebänder wurde abweichend von der DIN ISO 7765-2 mit Probenabmessungen 60 mm * 60 mm bestimmt. Die Ergebnisse sind in Tabelle 4 aufgeführt. Tabelle 4: Durchstoßfestigkeit und Verformbarkeit verschiedener Klebebänder Klebeband Durchstoßverformung in mm Durchstoßarbeit in J A 5 - 8 0,2 - 0,3 B 9 - 11 0,2 - 0,3 C 10 - 13 0,4 - 0,5 F 18 - 25 0,7 - 1,1 The puncture resistance of various adhesive tapes was determined differently from DIN ISO 7765-2 with sample dimensions 60 mm * 60 mm. The results are shown in Table 4. Table 4: puncture resistance and deformability of various adhesive tapes duct tape Puncture deformation in mm Puncture work in J A 5 - 8 0.2-0.3 B 9 - 11 0.2-0.3 C 10 - 13 0.4 - 0.5 F 18 - 25 0.7 - 1.1

Die folgende Tabelle 5 zeigt die Werte der Beispielbänder und die zweier Vergleichsbänder, die den Bändern der CH 686 673 A5 und der EP 1 847 577 A2 entsprechen: Tabelle 5: Technische Daten verschiedener Klebebänder A C D E F Trägerfolie Material Herstellungsart Dicke [µm] PE Blasfolie 70 EVA/PE 70 PE Gießfolie 70 PE Gießfolie 70 PUR Blasfolie 50 Klebstoff Material Grammatur 1g/m2] UV-A 200 D-A 230 D-A 200 UV-A 200 UV-A 200 Gelege ja Ja nein ja Ja sd 20-25 1-2 15-20 15-20 0,2-0,4 Δε [%] 5-10 50-60 20-30 20-30 170-210 TV1 Falten - - - - TV2 Falten - - - - EK [N] 8-15 7-9 5-7 6-8 7-10 WDS [J] 0,2 -0,3 0,4 -0,5 0,2 -0,3 0,2 -0,3 0,7-1,1 BK [N/cm] 20-25 20-25 10-15 20-25 35-45 RD [%] 350 - 400 550 - 600 250 - 300 250 - 300 500-550 KK [N/cm] 18-20 12-15 12-15 18-20 18-20 In der Tabelle 5 bedeuten:
Δε - der Dehnungsparameter,
TV1 - das Temperaturverhalten der verklebten Folie auf schwarzer Vliesunterspannbahn nach 10 min bei 85 °C,
TV2 - das Temperaturverhalten der verklebten Folie auf schwarzer PUR-Dachbahn nach 10 min bei 85 °C,
EK - die Elmendorfkraft nach EN 12025,
WDS - die Durchstoßarbeit nach DIN ISO 7765-2,
BK - die Bruchkraft nach DIN EN 14410,
RD - die Reißdehnung nach DIN EN 14410,
KK - die Klebkraft (auf Stahl) nach DIN EN 1939.
The following Table 5 shows the values of the example bands and those of two comparison bands corresponding to the bands of the CH 686 673 A5 and the EP 1 847 577 A2 correspond: Table 5: Technical data for various adhesive tapes A C D e F Carrier film Material Production method Thickness [μm] PE blown film 70 EVA / PE 70 PE cast film 70 PE cast film 70 PUR blown film 50 Adhesive material grammage 1g / m 2 ] UV-A 200 DA 230 DA 200 UV-A 200 UV-A 200 scrim Yes Yes No Yes Yes s d 20-25 1-2 15-20 15-20 0.2-0.4 Δε [%] 5-10 50-60 20-30 20-30 170-210 TV1 wrinkles - - - - TV2 wrinkles - - - - EK [N] 8-15 7-9 5-7 6-8 7-10 WDS [J] 0.2 -0.3 0.4 -0.5 0.2 -0.3 0.2 -0.3 0.7-1.1 BK [N / cm] 20-25 20-25 10-15 20-25 35-45 RD [%] 350 - 400 550 - 600 250-300 250-300 500-550 KK [N / cm] 18-20 12-15 12-15 18-20 18-20 In Table 5, mean:
Δε - the strain parameter,
TV1 - the temperature behavior of the bonded film on black fleece underlay after 10 min at 85 ° C,
TV2 - the temperature behavior of the bonded film on black PUR roofing membrane after 10 min at 85 ° C,
EK - the Elmendorf force according to EN 12025,
W DS - the puncture work according to DIN ISO 7765-2,
BK - the breaking strength according to DIN EN 14410,
RD - the elongation at break according to DIN EN 14410,
KK - the bond strength (on steel) according to DIN EN 1939.

"Falten" bedeutet dabei für TV1 und TV2, dass ein starker Faltenwurf auftrat, während "-" bedeutet, dass sich keine Falten ausbildeten. Die erfindungsgemäßen Bänder mit PE-Gießfolien-Träger zeigten bei Temperaturbeanspruchung keine Faltenbildung. Alle Bänder waren gut von Hand zu reißen."Fold" means for TV1 and TV2 that a strong wrinkle occurred, while "-" means that no wrinkles formed. The tapes according to the invention with PE cast film carrier showed no wrinkling on temperature stress. All tapes were easy to tear by hand.

Die Erfindung beschränkt sich nicht auf die beschriebenen Ausführungsbeispiele, sondern umfasst auch alle im Rahmen der Ansprüche liegenden Ausführungen. So kann der Fachmann die Erfindung durch zusätzliche vorteilhafte Maßnahmen ergänzen, ohne dass der Rahmen der Erfindung verlassen wird. Derartige Maßnahmen sind beispielsweise die Fertigung eines doppelseitigen Klebebandes oder der Einsatz eines mehrschichtigen Trägers.The invention is not limited to the described embodiments, but also includes all embodiments within the scope of the claims. Thus, the skilled person can supplement the invention by additional advantageous measures, without departing from the scope of the invention. Such measures are, for example, the production of a double-sided adhesive tape or the use of a multi-layered carrier.

Claims (9)

  1. A technical adhesive tape, particularly for the bonding of films or nonwovens in the construction sector, having a tapelike carrier consisting of plastic and having, applied at least on one side, a pressure-sensitive adhesive coating which consists of a pressure-sensitive adhesive and is applied with a weight per unit area of at least 100 g/m2,
    wherein the carrier comprises a cast polyolefin film and is elastically and plastically extensible such that the difference Δε between the percentage total elongation under load and the percentage permanent elongation after subsequent removal of load is in the range from 15 to 50 percent, with the total elongation being found on measurement in accordance with DIN 53360 on sample strips 25 mm wide and at least 250 mm long, taken longitudinally relative to the production direction of the film, under a static load of 1 kg applied for 30 minutes, and the permanent elongation being determined 30 minutes after removal of load from the sample strip, with the adhesive coating consisting of a UV-crosslinked or UV-polymerized acrylate adhesive.
  2. The adhesive tape as claimed in claim 1,
    wherein the polyolefin film has a polyethylene fraction of at least 50%.
  3. The adhesive tape as claimed in claim 1 or 2,
    which has a water vapor diffusion equivalent air layer thickness sd of > 15 m according to DIN 52615.
  4. The adhesive tape as claimed in any of claims to 3,
    wherein a laid-filament scrim is disposed between carrier and adhesive coating or within the adhesive coating.
  5. The adhesive tape as claimed in any of claims 1 to 4,
    wherein the tape is tearable by hand, having an Elmendorf tear strength of ≤ 15 N, preferably ≤ 10 N, measured according to EN 12025.
  6. The adhesive tape as claimed in any of claims 1 to 5,
    wherein the thickness of the carrier is in the range from 30 µm to 200 µm, preferably in the range from 50 µm to 80 µm.
  7. The adhesive tape as claimed in any of claims 1 to 6,
    wherein the carrier is coated on both sides with a pressure-sensitive adhesive.
  8. The adhesive tape as claimed in any of claims 1 to 7,
    wherein the carrier is of multilayer construction.
  9. The use of an adhesive tape as claimed in any of claims 1 to 8 for adhesive bonding of vapor barriers, vapor retarders and/or roofing underlay sheets.
EP10013495.6A 2010-10-11 2010-10-11 Technical adhesive strip and use of same to stick films or non-woven fabrics in construction Active EP2439062B1 (en)

Priority Applications (4)

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EP13193543.9A EP2700688B1 (en) 2010-10-11 2010-10-11 Technical adhesive strip and use of same to stick films or non-woven fabrics in construction
PL13193543.9T PL2700688T3 (en) 2010-10-11 2010-10-11 Technical adhesive strip and use of same to stick films or non-woven fabrics in construction
EP10013495.6A EP2439062B1 (en) 2010-10-11 2010-10-11 Technical adhesive strip and use of same to stick films or non-woven fabrics in construction
PL10013495T PL2439062T3 (en) 2010-10-11 2010-10-11 Technical adhesive strip and use of same to stick films or non-woven fabrics in construction

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EP10013495.6A EP2439062B1 (en) 2010-10-11 2010-10-11 Technical adhesive strip and use of same to stick films or non-woven fabrics in construction

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EP2692959B1 (en) 2012-07-29 2016-04-06 Hanno-Werk GmbH & Co. KG Bande de feuille
DE202016101644U1 (en) 2016-03-24 2017-06-27 Coroplast Fritz Müller Gmbh & Co. Kg Overmouldable adhesive tape

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EP3036099B2 (en) 2013-09-18 2022-11-30 Holcim Technology Ltd Peel and stick roofing membranes with cured pressure-sensitive adhesives
CA3018752C (en) 2016-03-25 2022-06-07 Firestone Building Products Company, Llc Fully-adhered roof system adhered and seamed with a common adhesive

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CH686673C1 (en) 1994-10-17 1998-04-30 Silu Verwaltung Ag Stretchable BUT RICE FESTIVAL SIDED TAPE.
CH687328A5 (en) 1996-03-07 1996-11-15 Silu Verwaltung Ag Adhesive tape for fixing vapour seals and wind seals
DE29704323U1 (en) * 1997-02-26 1997-05-15 Textec Construct Gmbh Tech Tex Sealing tape / sealing membrane as a connecting element in the construction industry
DE69827142T2 (en) 1998-11-11 2006-03-09 Minnesota Mining And Manufacturing Co., St. Paul Multilayer film containing a polyurethane protective layer
DE10359630A1 (en) 2003-12-18 2005-07-21 Coroplast Fritz Müller Gmbh & Co. Kg Technical adhesive tape and process for its production
DE102004045576A1 (en) 2004-09-17 2006-03-30 Henkel Kgaa duct tape
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EP2692959B1 (en) 2012-07-29 2016-04-06 Hanno-Werk GmbH & Co. KG Bande de feuille
DE202016101644U1 (en) 2016-03-24 2017-06-27 Coroplast Fritz Müller Gmbh & Co. Kg Overmouldable adhesive tape
DE102017105028A1 (en) 2016-03-24 2017-09-28 Coroplast Fritz Müller Gmbh & Co. Kg "Over-cleanable adhesive tape"
DE102017105028B4 (en) 2016-03-24 2021-07-15 Coroplast Fritz Müller Gmbh & Co. Kg Plasterable tape and use

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EP2700688B1 (en) 2016-05-11
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PL2439062T3 (en) 2015-05-29
EP2439062A1 (en) 2012-04-11
EP2700688A2 (en) 2014-02-26

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